决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Engineered T cells secreting anti-BCMA T cell engagers control multiple myeloma and promote immune memory in vivo.
多发性骨髓瘤是成人第二常见的血液系统恶性肿瘤,仍是一种无法治愈的疾病。
多发性骨髓瘤是成人第二常见的血液系统恶性肿瘤,仍是一种无法治愈的疾病。靶向B细胞成熟抗原(BCMA)的免疫治疗,包括携带嵌合抗原受体(CAR)的T细胞和系统性注射的双特异性T细胞衔接器(TCE),已显示出显著的临床活性,且已有多个产品获得上市批准。然而,尽管结果令人鼓舞,大多数患者最终仍会变得难治并复发,这凸显了对替代策略的需求。分泌TCE抗体的工程化T细胞(STAb)代表了一种有前景的策略,它结合了过继性细胞治疗和双特异性抗体的优势。在此,我们开展了一项全面的临床前研究,在模拟复发/难治性多发性骨髓瘤患者条件的T细胞受限实验环境中,比较了表达第二代抗BCMA CAR的T细胞(CAR-T)与分泌BCMAxCD3 TCE的T细胞(STAb-T)的治疗潜力。STAb-T细胞在极低的效靶比下即可招募T细胞活性,并且对细胞表面释放的可溶性BCMA介导的抑制具有抵抗性,从而在体外增强了细胞毒性反应并防止了多发性骨髓瘤细胞的免疫逃逸。这些优势导致STAb-T细胞在体内强劲扩增和持续存在,产生能够控制异种移植模型中多发性骨髓瘤进展的长寿命记忆性BCMA特异性反应,表现优于传统CAR-T细胞。这些有前景的临床前结果鼓励在复发/难治性多发性骨髓瘤中开展BCMA-STAb-T细胞方法的临床测试。
Multiple myeloma is the second most common hematological malignancy in adults and remains an incurable disease. B cell maturation antigen (BCMA)-directed immunotherapy, including T cells bearing chimeric antigen receptors (CARs) and systemically injected bispecific T cell engagers (TCEs), has shown remarkable clinical activity, and several products have received market approval. However, despite promising results, most patients eventually become refractory and relapse, highlighting the need for alternative strategies. Engineered T cells secreting TCE antibodies (STAb) represent a promising strategy that combines the advantages of adoptive cell therapies and bispecific antibodies. Here, we undertook a comprehensive preclinical study comparing the therapeutic potential of T cells either expressing second-generation anti-BCMA CARs (CAR-T) or secreting BCMAxCD3 TCEs (STAb-T) in a T cell-limiting experimental setting mimicking the conditions found in patients with relapsed/refractory multiple myeloma. STAb-T cells recruited T cell activity at extremely low effector-to-target ratios and were resistant to inhibition mediated by soluble BCMA released from the cell surface, resulting in enhanced cytotoxic responses and prevention of immune escape of multiple myeloma cells in vitro. These advantages led to robust expansion and persistence of STAb-T cells in vivo, generating long-lived memory BCMA-specific responses that could control multiple myeloma progression in xenograft models, outperforming traditional CAR-T cells. These promising preclinical results encourage clinical testing of the BCMA-STAb-T cell approach in relapsed/refractory multiple myeloma.
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